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Endothelial cell-type-specific molecular requirements for angiogenesis drive fenestrated vessel development in the brain

机译:内皮细胞型特异性分子要求对血管生成的血管生成驱动大脑中的血管发育

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摘要

Vascular endothelial cells (vECs) in the brain exhibit structural and functional heterogeneity. Fenestrated, permeable brain vasculature mediates neuroendocrine function, body-fluid regulation, and neural immune responses; however, its vascular formation remains poorly understood. Here, we show that specific combinations of vascular endothelial growth factors (Vegfs) are required to selectively drive fenestrated vessel formation in the zebrafish myelencephalic choroid plexus (mCP). We found that the combined, but not individual, loss of Vegfab, Vegfc, and Vegfd causes severely impaired mCP vascularization with little effect on neighboring non-fenestrated brain vessel formation, demonstrating fenestrated-vEC-specific angiogenic requirements. This Vegfs-mediated vessel-selective patterning also involves Ccbe1. Expression analyses, cell-type-specific ablation, and paracrine activity-deficient vegfc mutant characterization suggest that vEC-autonomous Vegfc and meningeal fibroblast-derived Vegfab and Vegfd are critical for mCP vascularization. These results define molecular cues and cell types critical for directing fenestrated CP vascularization and indicate that vECs’ distinct molecular requirements for angiogenesis underlie brain vessel heterogeneity.
机译:大脑中血管内皮细胞(VECs)表现出结构性和功能性异质性。发育,可渗透的脑脉管系统介导神经内分泌功能,体液调节和神经免疫应答;然而,它的血管形成仍然是不知情的。在这里,我们表明血管内皮生长因子(VEGF)的特异性组合是在斑马鱼骨肉脑脉络丛(MCP)中选择性地驱动蕨类植物形成。我们发现,组合但不是个人,VEGFAB,VEGFC和VEGFD的损失导致MCP血管形成的严重受损,几乎没有对邻近的非蕨类脑血管形成的影响,证明了特异性的血管生成要求。这种VEGFS介导的血管选择性图案也涉及CCBE1。表达分析,细胞型烧蚀和邻邻静脉缺乏VEGFC突变体表征表明,VEC-自主VEGFC和脑膜成纤维细胞衍生的VEGFAB和VEGFD对于MCP血管化至关重要。这些结果定义了对引导蕨类植物CP血管化至关重要的分子提示和细胞类型,并表明VECS对血管生成的不同分子要求脑血管异质性。

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